138 lines
6.8 KiB
Markdown
138 lines
6.8 KiB
Markdown
# Lazy Graph Expansion
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## Overview
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Implement lazy (on-demand) graph expansion for trip routing within Yandex.Schedules API quota constraints. Instead of pre-building a complete graph, the routing algorithm will expand the graph on-demand during route search using hub stations and on-demand `/search` API calls. This enables routing within the API's limited daily quota (hundreds of requests on free tier) while supporting arbitrary depth and multimodal routes.
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**Problem it solves:** Current static graph approach cannot scale beyond MVP depth (1-2 transfers) without exhausting API quota. Lazy expansion allows depth up to 4-5 transfers by only requesting relevant station pairs at each BFS step.
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**Key benefits:**
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- API quota protection via on-demand requests only for relevant hub pairs
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- Arbitrary transfer depth (4-5 max per specification)
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- Automatic fallback to neighboring stations when primary hubs are closed
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- Cached results per (from:to:date) with appropriate TTL policies
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## Context (from discovery)
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- **Files/components involved:** `internal/routing/graph.go`, `internal/yandex/client.go`, `internal/cache/store.go`
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- **Related patterns:** Lazy graph expansion (spec section 7.2), cache-aside pattern, BFS/Dijkstra with depth limiting
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- **Dependencies:** Yandex API rate limiter + circuit breaker (already implemented), Redis cache with TTL policies (already implemented)
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- **Current state:** Static graph built at startup via `BuildGraphFromStations`; routing uses pre-built graph with limited depth
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**Specification reference:**
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- Section 7.2: "Lazy (lazy) graph expansion with hub stations — BFS/Dijkstra with depth limiting (4-5 transfers max), on-demand /search requests only for relevant station pairs, aggressive caching"
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- Roadmap: Etapa 3 — Глубокий поиск и автодетект (Deep search and auto-detection)
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## Development Approach
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- **Testing approach:** TDD (tests first) — user preference confirmed
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- Each task will include new/updated tests as required checklist items
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- All tests must pass before starting next task — no exceptions
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## Testing Strategy
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- **Unit tests:** Required for every task (TDD approach)
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- **E2E tests:** Not applicable for this backend routing change (no UI changes)
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- Tests cover both success and error scenarios for all new code paths
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## Progress Tracking
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- Mark completed items with `[x]` immediately when done
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- Add newly discovered tasks with ➕ prefix
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- Document issues/blockers with ⚠️ prefix
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---
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## Implementation Steps
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### Task 1: Add hub station list and lazy expansion logic to routing graph
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- [x] Define hub station selection criteria (population-based + outgoing flights count)
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- [x] Add `BuildGraphFromHubs` function that creates station + city nodes with synthetic edges only
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- [x] Implement `ExpandGraphLazy` method that on-demand adds edges from current node to hub candidates via /search
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- [x] Write tests for hub station selection
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- [x] Write tests for lazy expansion behavior (on-demand /search calls)
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- [x] Run tests - must pass before task 2
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### Task 2: Integrate Yandex /search for on-demand edge expansion
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- [ ] Add `SearchRoutes` method to yandex client for on-demand station pair searches
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- [ ] Implement hub expansion: from current node, call /search to hub stations + nearby stations at destination city
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- [ ] Add cache key generation for search results: `search:{from}:{to}:{date}`
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- [ ] Write tests for on-demand search integration
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- [ ] Write tests for cache integration with lazy expansion
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- [ ] Run tests - must pass before task 3
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### Task 3: Update FindRoute to use lazy expansion with transfer depth limit
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- [ ] Modify `FindRoute` to lazily expand adjacency list during BFS instead of using pre-built edges
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- [ ] Implement transfer depth tracking with max 4-5 transfers limit
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- [ ] Add MCT calculation during lazy expansion (using existing ApplyMCT logic)
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- [ ] Write tests for FindRoute with lazy expansion (various transfer counts)
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- [ ] Write tests for transfer limit enforcement
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- [ ] Run tests - must pass before task 4
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### Task 4: Implement cache-aware search results with TTL policies
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- [ ] Integrate search result caching using existing cache TTL policies (near-term: 2-6h, far-term: 7d)
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- [ ] Add cache lookup before on-demand /search calls
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- [ ] Write tests for cache hit/miss with lazy expansion
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- [ ] Write tests for TTL policy selection based on date distance
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- [ ] Run tests - must pass before task 5
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### Task 5: Verify end-to-end lazy routing and update documentation
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- [ ] Verify all requirements from Overview are implemented
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- [ ] Verify edge cases: closed station fallback, depth limits, cache behavior
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- [ ] Run full test suite (unit tests)
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- [ ] Run linter - all issues must be fixed
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- [ ] Update this plan file when scope changes during implementation
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- [ ] Update README.md if new patterns discovered
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### Task 6: Final verification and plan completion
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- [ ] Verify all checkboxes marked
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- [ ] Run final test suite
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- [ ] *ralphex automatically moves plan to `docs/plans/completed/*
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---
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## Technical Details
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### Data Structures
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**Hub Station Selection:**
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- Hubs selected based on: population (million+ cities), number of outgoing Yandex flights
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- Pre-computed list or on-demand selection from station directory
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**Lazy Expansion Flow:**
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1. Start BFS from origin station
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2. At each step, identify current node's type (station or city hub)
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3. If station: query /search to hub stations + stations in destination city radius
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4. If city hub: query /search to station hubs in target city
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5. Add found edges to adjacency list (with caching)
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6. Continue BFS with transfer tracking
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7. Stop at max 4-5 transfers or when destination reached
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**Cache Keys:**
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- `search:{from_station_id}:{to_station_id}:{date}` — search results with TTL
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- `station:{station_id}` — station directory data (30 days TTL)
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### Processing Flow
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```
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User requests route: Moscow → Simferopol, 2026-08-20
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↓
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Check cache: search:c146:c213:2026-08-20 → cache hit/miss
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↓
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If miss: Build initial graph (stations + city hubs, synthetic edges)
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↓
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BFS from Moscow station:
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Step 1: Expand from Moscow → query /search to hub candidates (city hub + nearby stations)
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Step 2: For each reached hub, expand further → query /search to next candidates
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Step 3: Track transfers, apply MCT at each transfer point
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Step 4: Stop at max 5 transfers or when Simferopol station reached
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↓
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Pareto-rank results (time, transfers, cost)
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↓
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Return routes + cache results for future searches
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```
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## Post-Completion
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*Items requiring manual intervention or external systems - no checkboxes, informational only*
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**Manual verification:**
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- Test route search with various transfer counts (0, 1, 2, 3, 4, 5)
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- Verify cache hit/miss behavior for near-term and far-term dates
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- Test station closure fallback to neighboring stations
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**External system updates:**
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- None for this backend change (routing logic internal to service) |